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OverviewGrowth of wireless communications is demanding increased system capacity for mobile communications satellites - digital beamforming technology provides a promising cost-effective solution to this problem. This text discusses beamforming techniques and results, state-of-the-art supportive technologies and promising applications for wireless communications. Full Product DetailsAuthor: J. Litva , Titus LoPublisher: Artech House Publishers Imprint: Artech House Publishers Dimensions: Width: 15.60cm , Height: 1.90cm , Length: 23.40cm Weight: 0.625kg ISBN: 9780890067123ISBN 10: 0890067120 Pages: 320 Publication Date: 31 August 1996 Audience: Professional and scholarly , General/trade , Professional & Vocational Format: Hardback Publisher's Status: Active Availability: Out of print, replaced by POD ![]() We will order this item for you from a manufatured on demand supplier. Table of ContentsIntroduction: Historical Perspective. Elements of Digital Beamforming. Applications of Digital Beamforming. Fundamentals of Digital Beamforming: Introduction to Antenna Array. Analogue Beamforming. Digital Phased Array. Digital Beamforming. Adaptive Beamforming: Basic Concepts of Adaptive Beamforming. Fully Adaptive Beamforming. Partially Adaptive Beamforming. Adaptive Algorithms. Digital Beamforming in Communications: Wireless Communications Environments. Antenna Diversity and Optimal Combining. Interference Suppression. Blind Beamforming. Space Division Multiple Access. Intelligent Antennas. Antenna Elements and Arrays: Horn Antenna Elements. Printed Antenna Elements. Types of Antenna Arrays. MMIC Technology: Hybrid Monolithic Integrated Circuits. Fully Monolithic Integrated Circuits. Monolithic Microwave-Photonic Integrated Circuits. DBF Antenna Technology: Elemental Receiver Structure. Integrated DBF Antennas. System Nonlinearities and Their Effects. Examples of DBF Arrays. Digital Signal Processing Technology: Advances in Digital Signal Processing Technology. Application-Specific Integrated Circuits. Development of Cost-Effective DBF Systems: Low-Cost Components. System Integration. Hybrid Systems. Digital Beamformer Design: FFT Beamformers. DFT Beamformers. DBF with Frequency Division Multiplex/Multiple Access. DBF with Time Division Multiplex/Multiple Access. DBF with Code Division Multiplex/Multiple Access. Digital Beamforming for Mobile Satellite Communications: Mobile Satellite Communications Environment. DBF for Mobile Satellite Communications. Case Study. Digital Beamforming for Land Mobile Communications: Land Mobile Communications Environment. DBF for Land Mobile Communications. Case Study. Digital Beamforming for In-Building Communications: In-Building Communications Environment. DBF for In-Building Communications. Case Study.ReviewsAuthor InformationDr. John Litva is director of the Communications Research Laboratory and professor of electrical and computer engineering at McMaster University in Ontario, Canada. A principal investigator and thrust leader with the Telecommunications Research Institute of Ontario (TRIO), he also serves as a consultant to both government and industry. He earned his Ph.D. in Physics from University of Western Ontario. Dr. Titus Lo holds a Ph.D. in Electrical Engineering from McMaster University, where he is a senior research engineer for the Communications Research Laboratory. Currently he is researching the design, development, and application of intelligent antennas in wireless communications. Tab Content 6Author Website:Countries AvailableAll regions |